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The
growth mechanism, …
… which plays a vital role in the rational design and precise fabrication of heterogeneous
nanoparticles, can be unveiled by exploiting single-particle scattering spectra, as shown
by T. Kang, J. Yi, and co-workers in their Communication on page 4633 ff. Three
patterns of scattering spectra for individual gold/polystyrene dimeric nanoparticles are
readily differentiated, and overgrowth mechanisms that correspond to each scattering
spectrum are proposed.
Inside Cover
Young In Yang, Eunhye Jeong, Inhee Choi, Suseung Lee,
Hyeon Don Song, Kihoon Kim, Yeonho Choi,* Taewook Kang,* and
Jongheop Yi*
The growth mechanism, which plays a vital role in the rational design and precise
fabrication of heterogeneous nanoparticles, can be unveiled by exploiting singleparticle scattering spectra, as shown by T. Kang, J. Yi, and co-workers in their
Communication on page 4633 ff. Three patterns of scattering spectra for individual
gold/polystyrene dimeric nanoparticles are readily differentiated, and overgrowth
mechanisms that correspond to each scattering spectrum are proposed.